

Chinese Journal OF Rice Science ›› 2015, Vol. 29 ›› Issue (6): 587-594.DOI: 10.3969/j.issn.1001G7216.2015.06.004
• Orginal Article • Previous Articles Next Articles
Yun-xia FANG1,2,3, Li ZHU1, Jiang-jie PAN4, Hai-ping YU2, Da-wei XUE4, Yu-chun RAO2, Xiao-hu WANG2, Zhen-yuan SHI2, Dong ZHANG4, yang-zhou ZHU2, Guo-jun DONG2, Da-li ZENG2, Guang-heng ZHANG2, Long-biao GUO2, Jiang HU2,*(
), Qian QIAN2,*(
)
Received:2015-01-30
Revised:2015-03-17
Online:2015-10-25
Published:2015-11-10
Contact:
Jiang HU, Qian QIAN
About author:*Corresponding author:E-mail:qianqian188@hotmail.com,hujiang588@163.com
方云霞1,2,3, 朱丽2, 潘江杰4, 余海平2, 薛大伟4, 饶玉春2, 王小虎2, 石珍源2, 张栋4, 祝阳舟2, 董国军2, 曾大力2, 张光恒2, 郭龙彪2, 胡江2,*(
), 钱前2,*(
)
通讯作者:
胡江,钱前
作者简介:*通讯录作者:E-mail:qianqian188@hotmail.com,hujiang588@163.com
基金资助:CLC Number:
Yun-xia FANG, Li ZHU, Jiang-jie PAN, Hai-ping YU, Da-wei XUE, Yu-chun RAO, Xiao-hu WANG, Zhen-yuan SHI, Dong ZHANG, yang-zhou ZHU, Guo-jun DONG, Da-li ZENG, Guang-heng ZHANG, Long-biao GUO, Jiang HU, Qian QIAN. Identification and Fine Mapping of a Narrow Leaf Mutant nal10 in Rice[J]. Chinese Journal OF Rice Science, 2015, 29(6): 587-594.
方云霞, 朱丽, 潘江杰, 余海平, 薛大伟, 饶玉春, 王小虎, 石珍源, 张栋, 祝阳舟, 董国军, 曾大力, 张光恒, 郭龙彪, 胡江, 钱前. 水稻窄叶突变体nal10的鉴定与基因精细定位[J]. 中国水稻科学, 2015, 29(6): 587-594.
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URL: http://www.ricesci.cn/EN/10.3969/j.issn.1001G7216.2015.06.004
| 分子标记 Marker | 正向引物序列(5'-3') Forward primer sequence (5'-3') | 反向引物序列(5'-3') Reverse primer sequence (5'-3') | 实验目的 Purpose |
|---|---|---|---|
| PK18 | CATAAGGACGAACCAGAGGC | CATATCACCACCCACTAGCAA | Mapping |
| PK20 | GGAACTGCATTTCGATTCATAC | TACTCGCTACAAGACATCACAA | Mapping |
| PK25 | GTAGGTCGTCCTGATACTCGG | TACTTGTATCTTGCCCTATGCT | Mapping |
| PK30 | CAAGTAACTCTTTGGTCATGCA | GCATTTCCCATTGACTGAAC | Mapping |
| PK37 | CGCATTGTCAAGATGAGGAAG | TTAGACCACCCCTAAAGCAAT | Mapping |
| PK49 | CTTATGAATCCTGAAGCCACA | CCTTAACCATTGATTGTCCC | Mapping |
| PK66 | ATCAGTTAGAACCACGAAGCA | GCCTTTTGATATCTTCAGCG | Mapping |
| PK76 | GCAGCTCGTGGACACTCGTC | CCCTGCGTTATCCCTCTTCC | Mapping |
| PK78 | CATAGGCCATGCATTGACAGA | AGGTGGGGAAAAGGTAAAACTG | Mapping |
| PK83 | CAAAAACTTATATCAATGCG | GCTTGTAAATATACATTGTCGTC | Mapping |
| PIN1 | CGTCTGCTTCAGGTGGAACTT | GACAGGATCGAGATGGATTTCAG | qRT-PCR |
| LAX1 | TTGCCTTGCTGTGTCTTCGT | TGGACATTGCACACCGAGTAG | qRT-PCR |
| AGAP | CTGACCCTTGGGCAACAGA | GGGTTCAGGTTGGCTTTGATC | qRT-PCR |
| IAA3 | CCCGTGGCAGATGTTTGTC | TTCGGAACCCTTCATGATCCT | qRT-PCR |
| IAA31 | TTCGTGAAGGTGAGCATGGA | CGGTAGCCCTTGTACACCTTGA | qRT-PCR |
| YUCCA1 | CGCAACACGGTGCATGTC | CGATGCCGAACGTGGATAG | qRT-PCR |
| RCN1 | TCATCAACCGCGACAGGAT | CCGCCTCGTACGGGTACTT | qRT-PCR |
| Actin | ATCCATCTTGGCATCTCTCAGC | CACAATGGATGGGCCAGACT | qRT-PCR |
Table 1 Markers developed for mapping of NAL10 and quantitative real-time PCR(qRT-PCR) analysis.
| 分子标记 Marker | 正向引物序列(5'-3') Forward primer sequence (5'-3') | 反向引物序列(5'-3') Reverse primer sequence (5'-3') | 实验目的 Purpose |
|---|---|---|---|
| PK18 | CATAAGGACGAACCAGAGGC | CATATCACCACCCACTAGCAA | Mapping |
| PK20 | GGAACTGCATTTCGATTCATAC | TACTCGCTACAAGACATCACAA | Mapping |
| PK25 | GTAGGTCGTCCTGATACTCGG | TACTTGTATCTTGCCCTATGCT | Mapping |
| PK30 | CAAGTAACTCTTTGGTCATGCA | GCATTTCCCATTGACTGAAC | Mapping |
| PK37 | CGCATTGTCAAGATGAGGAAG | TTAGACCACCCCTAAAGCAAT | Mapping |
| PK49 | CTTATGAATCCTGAAGCCACA | CCTTAACCATTGATTGTCCC | Mapping |
| PK66 | ATCAGTTAGAACCACGAAGCA | GCCTTTTGATATCTTCAGCG | Mapping |
| PK76 | GCAGCTCGTGGACACTCGTC | CCCTGCGTTATCCCTCTTCC | Mapping |
| PK78 | CATAGGCCATGCATTGACAGA | AGGTGGGGAAAAGGTAAAACTG | Mapping |
| PK83 | CAAAAACTTATATCAATGCG | GCTTGTAAATATACATTGTCGTC | Mapping |
| PIN1 | CGTCTGCTTCAGGTGGAACTT | GACAGGATCGAGATGGATTTCAG | qRT-PCR |
| LAX1 | TTGCCTTGCTGTGTCTTCGT | TGGACATTGCACACCGAGTAG | qRT-PCR |
| AGAP | CTGACCCTTGGGCAACAGA | GGGTTCAGGTTGGCTTTGATC | qRT-PCR |
| IAA3 | CCCGTGGCAGATGTTTGTC | TTCGGAACCCTTCATGATCCT | qRT-PCR |
| IAA31 | TTCGTGAAGGTGAGCATGGA | CGGTAGCCCTTGTACACCTTGA | qRT-PCR |
| YUCCA1 | CGCAACACGGTGCATGTC | CGATGCCGAACGTGGATAG | qRT-PCR |
| RCN1 | TCATCAACCGCGACAGGAT | CCGCCTCGTACGGGTACTT | qRT-PCR |
| Actin | ATCCATCTTGGCATCTCTCAGC | CACAATGGATGGGCCAGACT | qRT-PCR |
| 基因 Locus name | 功能注释 Function annotation |
|---|---|
| LOC_Os01g34580 | Hypothetical protein |
| LOC_Os01g34590 | Expressed protein |
| LOC_Os01g34600 | Expressed protein |
| LOC_Os01g34610 | Expressed protein |
| LOC_Os01g34614 | DNA directed RNA polymerase, 7 kDa subunit domain containing protein, expressed |
| LOC_Os01g34620 | OsGrx_S15.1 - glutaredoxin subgroup II, expressed |
| LOC_Os01g34630 | Retrotransposon protein, putative, Ty1-copia subclass, expressed |
| LOC_Os01g34660 | RNAse P Rpr2/Rpp21 subunit domain containing protein, fexpressed |
Table 2 Predicted genes in fine-mapping region.
| 基因 Locus name | 功能注释 Function annotation |
|---|---|
| LOC_Os01g34580 | Hypothetical protein |
| LOC_Os01g34590 | Expressed protein |
| LOC_Os01g34600 | Expressed protein |
| LOC_Os01g34610 | Expressed protein |
| LOC_Os01g34614 | DNA directed RNA polymerase, 7 kDa subunit domain containing protein, expressed |
| LOC_Os01g34620 | OsGrx_S15.1 - glutaredoxin subgroup II, expressed |
| LOC_Os01g34630 | Retrotransposon protein, putative, Ty1-copia subclass, expressed |
| LOC_Os01g34660 | RNAse P Rpr2/Rpp21 subunit domain containing protein, fexpressed |
| [1] | Gonzalez N, de Bodt S, Sulpice R, et al. Increased leaf size: Different means to an end.Plant Physiol, 2010, 153(3): 1261-1279. |
| [2] | Bowman J L, Eshed Y, Baum S F.Establishment of polarity in angiosperm lateral organ.Trends Genet, 2002, 18(3): 134-141. |
| [3] | Qi J, Qian Q, Bu Q, et al.Mutation of the rice narrow leaf1 gene, which encodes a novel protein, affects vein patterning and polar auxin transport.Plant Physiol, 2008, 147(4): 1947-1959. |
| [4] | Ishiwata A, Ozawa M, Nagasaki H, et al.Two WUSCHEL-related homeobox genes, narrow leaf2 and narrow leaf3, control leaf width in rice.Plant Cell Physiol, 2013, 54(5): 779-792. |
| [5] | Cho S H, Yoo S C, Zhang H T, et al.The rice narrow leaf2 and narrow leaf3 loci encode WUSCHEL-related homeobox 3A (OsWOX3A) and function in leaf, spikelet, tiller and lateral root development.New Phytol, 2013, 198(4): 1071-1084. |
| [6] | Woo Y M, Park H J, Su'udi M, et al. Constitutively wilted 1, a member of the rice YUCCA gene family, is required for maintaining water homeostasis and an appropriate root to shoot ratio.Plant Mol Biol, 2007, 65(1-2): 125-136. |
| [7] | Fujino K, Matsuda Y, Ozawa K, et al.NARROW LEAF 7 controls leaf shape mediated by auxin in rice.Mol Genet Genom, 2008, 279(5): 499-507. |
| [8] | 孟庆彩. 水稻窄叶基因nal8 的精细定位. 扬州: 扬州大学,2011. |
| [9] | Li W, Wu C, Hu G, et al.Characterization and fine mapping of a novel rice narrow leaf mutant nal9.J Integr Plant Biol, 2013, 55(11): 1016-1025. |
| [10] | Cho S H, Yoo S C, Zhang H T, et al.Rice NARROW LEAF1 regulates leaf and adventitious root development.Plant Mol Biol Rep, 2014, 32(1): 270-281. |
| [11] | Zhang G H, Li S Y, Wang L, et al.LSCHL4 from japonica cultivar, which is allelic to NAL1, increases yield of indica super rice 93-11.Mol Plant, 2014, 7(8): 1350-1364. |
| [12] | Sazuka T, Kamiya N, Nishimura T, et al.A rice tryptophan deficient dwarf mutant, tdd1, contains a reduced level of indole acetic acid and develops abnormal flowers and organless embryos.Plant J, 2009, 60(2): 227-241. |
| [13] | Hu J, Zhu L, Zeng D L, et al.Identification and characterization of NARROW AND ROLLED LEAF 1, a novel gene regulating leaf morphology and plant architecture in rice.Plant Mol Biol, 2010, 73(3): 283-292. |
| [14] | Li M, Xiong G, Li R, et al.Rice cellulose synthase-like D4 is essential for normal cell-wall biosynthesis and plant growth.Plant J, 2009, 60(6): 1055-1069. |
| [15] | 王德仲, 桑贤春, 游小庆, 等. 水稻细卷叶突变体nrl2(t)的遗传分析和基因定位. 作物学报, 2011, 37(7): 1159-1166. |
| [16] | 周勇, 方云霞, 朱金燕, 等. 一个水稻卷叶突变体rl11(t)的遗传分析和基因定位. 科学通报, 2010, 55(13): 1240-1246. |
| [17] | 桑贤春, 林婷婷, 何沛龙, 等. 水稻显性窄叶突变体Dnal1的鉴定与基因定位. 中国农业科学, 2014, 47(9): 1819-1827. |
| [18] | 赵芳明, 张永, 吴燕茹, 等. 水稻条纹窄叶突变体nsl1的形态和生理分析及基因定位等. 科学通报, 2014, 59(16): 1508-1515. |
| [19] | 王峰, 唐彦强, 苗润隆, 等. 水稻窄叶白化突变体nul1的鉴定与基因定位. 科学通报, 2012, 57(22): 2066-2071. |
| [20] | Murray M G, Thompson W F.Rapid isolation of high molecular weight plant DNA.Nucleic Acids Res, 1980, 8: 4321-4325. |
| [21] | 郭旻, 李荣德, 姚健, 等. 水稻叶片形态相关基因RL3(t)的遗传分析和精细定位. 中国水稻科学, 2014, 28(5): 458-464. |
| [22] | Li H, Xue D, Gao Z, et al.A putative lipase gene EXTRA GLUME1 regulates both empty-glume fate and spikelet development in rice.Plant J, 2009, 57(4): 593-605. |
| [23] | 刁志娟, 李生平, 段远霖, 等. DDF1的表达水平影响水稻的营养生长与生殖发育. 中国水稻科学, 2013, 27(4): 353-358. |
| [24] | Duan Y, Li S, Chen Z, et al.Dwarf and deformed flower 1, encoding an F-box protein, is critical for vegetative and floral development in rice (Oryza sativa L.).Plant J, 2012, 72(5): 829-842. |
| [25] | Zhang G H, Xu Q, Zhu X D, et al.SHALLOTLIKE1 is a KANADI transcription factor that modulates rice leaf rolling by regulating leaf abaxial cell development.Plant Cell, 2009, 21(3): 719-735. |
| [26] | Rouhier N, Lemaire S D, Jacquot J P.The role of glutathione in photosynthetic organisms: Emerging functions for glutaredoxins and glutathionylation.Annu Rev Plant Biol, 2008, 59: 143-166. |
| [27] | Scarpella E, Barkoulas M, Tsiantis M.Control of leaf and vein development by auxin.Cold Spring Harb Perspect Biol, 2010, 2(1): a001511. |
| [28] | Sawchuk M G, Edgar A, Scarpella E.Patterning of leaf vein networks by convergent auxin transport pathways.PLoS Genet, 2013, 9(2): e1003294. |
| [29] | Komatsu K, Maekawa M, Ujiie S, et al.LAX and SPA: Major regulators of shoot branching in rice.Proc Natl Acad Sci USA, 2003, 100(20): 11765-11770. |
| [30] | Oikawa T, Kyozuka J.Two-step regulation of LAX PANICLE1 protein accumulation in axillary meristem formation in rice.Plant Cell, 2009, 21(4): 1095-1108. |
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